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Dynamic Task-Allocation for Unmanned Aircraft Systems

机译:无人机系统的动态任务分配

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摘要

This dissertation addresses improvements to a consensus based task allocation algorithms for improving the Quality of Service in multi-task and multi-agent environments. Research in the past has led to many centralized task allocation algorithms where a central computation unit is calculating the global optimum task allocation solution. The centralized algorithms are plagued by creating a single point of failure and the bandwidth needed for creating consistent and accurate situational awareness off all agents. This work will extend upon a widely researched decentralized task assignment algorithm based on the consensus principle. Although many extensions have led to improvements of the original algorithm, there is still much opportunity for improvement in providing sufficient and reliable task assignments in real-world dynamic conditions and changing environments. This research addresses practical changes made to the consensus based task allocation algorithms for improving the Quality of Service in multi-task and multi-agent environments.
机译:本文致力于改进基于共识的任务分配算法,以提高多任务和多代理环境中的服务质量。过去的研究导致了许多集中式任务分配算法,其中中央计算单元正在计算全局最优任务分配解决方案。通过创建单个故障点和在所有代理程序上创建一致且准确的态势感知所需的带宽,困扰着集中式算法。这项工作将在基于共识原理的广泛研究的分散任务分配算法的基础上扩展。尽管许多扩展导致对原始算法的改进,但是在现实世界中动态条件和变化的环境中提供足够可靠的任务分配方面,仍有很多改进的机会。这项研究解决了对基于共识的任务分配算法所做的实际更改,以提高多任务和多代理环境中的服务质量。

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    Bakker Tim;

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  • 年度 2014
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